Human-eye observation and machine signal detection combined maritime search and rescue information transmission method

A technology of signal detection and information transmission, which is applied to instruments, alarms, etc., can solve problems such as small diffraction loss, large radio wave propagation gap, and increased radio wave reflection, so as to achieve reliable rescue methods, save search and rescue time, and improve search and rescue efficiency. Effect

Active Publication Date: 2017-07-07
张玉文
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] With the development of science and technology, the strengthening of the economy, and the increase of sea and air activities, it is inevitable that various accidents will occur in these activities. The biggest hope for those involved in the accident is to get help in the shortest time. Can the rescue force search immediately? Finding the location of the person who fell into the water is the key to helping the person involved in the accident. However, the situation at sea is complicated. Compared with land communication, sea communication has its own environmental characteristics. First, in terms of terrain, there are fewer obstacles at sea, which leads to direct The result is that the radio wave propagation gap is large, so when the radio wave propagates at sea, the diffraction loss is smaller than that on land. At the same time, the propagation gap increases, which increases the radio wave reflection, and when the electromagnetic wave propagates at sea, if the grazing angle is small, The reflection coefficient in the microwave band is relatively large, so the influence of reflected waves is greater than that on land. Sea communication channels are vulnerable to sea surface reflection and atmospheric absorption loss, diffraction loss, cloud and fog attenuation, rain attenuation, wave height, and harsh ocean environments. Due to the influence of other factors, it is difficult to determine the location of the person who fell into the water. When someone falls into the water, the search and rescue personnel must immediately obtain the location of the person who fell into the water, so as to facilitate timely rescue

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  • Human-eye observation and machine signal detection combined maritime search and rescue information transmission method

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Embodiment

[0023] Embodiment: a method for transmitting information on maritime search and rescue combining human eye observation and machine signal detection, comprising the following steps:

[0024] (1) The person who fell into the water sends out a high-frequency distress signal: the person who fell into the water uses the Morse code on the distress device worn by himself or other codes that have been improved and encrypted to send out a high-frequency flashing light call for help;

[0025] (2) The rescuer finds the distress signal: the searcher uses human eyes or a telescope to observe the water surface, and finds the flashing light calling for help from the person who fell into the water in the distance, and the flashing light flashes at high frequency during the time when the light is on;

[0026] (3) The search and rescue personnel use the machine to analyze the high-frequency signal: the search and rescue personnel use the search and rescue equipment to aim at the approximate loca...

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Abstract

The invention discloses a human-eye observation and machine signal detection combined maritime search and rescue information transmission method. The method comprises the following steps that (1) one who falls into water emits high-frequency SOS signals by using a worn SOS device to emit high-frequency flickering-light SOS information in the form of Morse codes or other improved encryption codes; (2) a search and rescue staff discovers the SOS signals by discovering the flickering-light SOS information emitted by the distant one who falls into water as well as high-frequency flickering light via the eyes or a telescope; (3) the search and rescue staff analyzes the high-frequency signals via a machine by using a machine signal detector to carry out high-frequency analysis on the high-frequency light and corresponding decoding and further to obtain information of the one, who falls into water, himself / herself as well as the accurate geographic position of the one; and (4) rescue is executed. Thus, information of the one who falls into water can be obtained from high-frequency flickering light, the one can be rescued rapidly, and the search and rescue efficiency is improved.

Description

[0001] Technical field: [0002] The invention relates to a method for transmitting maritime search and rescue information, in particular to a method for transmitting maritime search and rescue information combining human eye observation and machine signal detection. [0003] Background technique: [0004] With the development of science and technology, the strengthening of the economy, and the increase of sea and air activities, it is inevitable that various accidents will occur in these activities. The biggest hope for those involved in the accident is to get help in the shortest time. Can the rescue force search immediately? Finding the location of the person who fell into the water is the key to helping the person involved in the accident. However, the situation at sea is complicated. Compared with land communication, sea communication has its own environmental characteristics. First, in terms of terrain, there are fewer obstacles at sea, which leads to direct The result is...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G08B21/08
CPCG08B21/088
Inventor 张玉文段双利史海宏
Owner 张玉文
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